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Article

Foliar Calcium Absorption by Tomato Plants: Comparing the Effects of Calcium Sources and Adjuvant Usage

by
Eduardo Santos
1,
Gabriel Sgarbiero Montanha
1,2,
Luís Fernando Agostinho
3,
Samira Polezi
3,
João Paulo Rodrigues Marques
1,4 and
Hudson Wallace Pereira de Carvalho
1,*
1
Group of Specialty Fertilizers and Plant Nutrition, Laboratory of Nuclear Instrumentation, Centre for Nuclear Energy in Agriculture, University of São Paulo, Avenida Centenário, 303, Piracicaba 13400-970, Brazil
2
Laboratory of Functional Genomics and Proteomics of Model Systems, Department of Biology and Biotechnology, Sapienza University of Rome, Via dei Sardi, 70, 00185 Rome, Italy
3
Luiz de Queiroz College of Agriculture, University of São Paulo, Avenida Pádua Dias, 11, Piracicaba 13418-900, Brazil
4
Department of Basic Science, Faculty of Animal Science and Food Engineering, University of São Paulo, Pirassununga 13635-900, Brazil
*
Author to whom correspondence should be addressed.
Plants 2023, 12(14), 2587; https://doi.org/10.3390/plants12142587
Submission received: 8 June 2023 / Revised: 2 July 2023 / Accepted: 4 July 2023 / Published: 8 July 2023

Abstract

The deficiency of calcium (Ca) reduces the quality and shelf life of fruits. In this scenario, although foliar spraying of Ca2+ has been used, altogether with soil fertilization, as an alternative to prevent deficiencies, little is known regarding its absorption dynamics by plant leaves. Herein, in vivo microprobe X-ray fluorescence was employed aiming to monitor the foliar absorption of CaCl2, Ca-citrate complex, and Ca3(PO4)2 nanoparticles with and without using adjuvant. We also investigated whether Sr2+ can be employed as Ca2+ proxy in foliar absorption studies. Moreover, the impact of treatments on the cuticle structure was evaluated by scanning electron microscopy. For this study, 45-day-old tomato (Solanum lycopersicum L., cv. Micro-Tom) plants were used as a model species. After 100 h, the leaves absorbed 90, 18, and 4% of aqueous CaCl2, Ca-citrate, and Ca3(PO4)2 nanoparticles, respectively. The addition of adjuvant increased the absorption of Ca-citrate to 28%, decreased that of CaCl2 to 77%, and did not affect Ca3(PO4)2. CaCl2 displayed an exponential decay absorption profile with half-lives of 15 h and 5 h without and with adjuvant, respectively. Ca-citrate and Ca3(PO4)2 exhibited absorption profiles that were closer to a linear behavior. Sr2+ was a suitable Ca2+ tracer because of its similar absorption profiles. Furthermore, the use of adjuvant affected the epicuticular crystal structure. Our findings reveal that CaCl2 was the most efficient Ca2+ source. The effects caused by adjuvant suggest that CaCl2 and Ca-citrate were absorbed mostly through hydrophilic and lipophilic pathways.
Keywords: calcium; foliar fertilization; X-ray fluorescence spectroscopy; blossom end rot; xylem; phloem calcium; foliar fertilization; X-ray fluorescence spectroscopy; blossom end rot; xylem; phloem

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MDPI and ACS Style

Santos, E.; Montanha, G.S.; Agostinho, L.F.; Polezi, S.; Marques, J.P.R.; de Carvalho, H.W.P. Foliar Calcium Absorption by Tomato Plants: Comparing the Effects of Calcium Sources and Adjuvant Usage. Plants 2023, 12, 2587. https://doi.org/10.3390/plants12142587

AMA Style

Santos E, Montanha GS, Agostinho LF, Polezi S, Marques JPR, de Carvalho HWP. Foliar Calcium Absorption by Tomato Plants: Comparing the Effects of Calcium Sources and Adjuvant Usage. Plants. 2023; 12(14):2587. https://doi.org/10.3390/plants12142587

Chicago/Turabian Style

Santos, Eduardo, Gabriel Sgarbiero Montanha, Luís Fernando Agostinho, Samira Polezi, João Paulo Rodrigues Marques, and Hudson Wallace Pereira de Carvalho. 2023. "Foliar Calcium Absorption by Tomato Plants: Comparing the Effects of Calcium Sources and Adjuvant Usage" Plants 12, no. 14: 2587. https://doi.org/10.3390/plants12142587

APA Style

Santos, E., Montanha, G. S., Agostinho, L. F., Polezi, S., Marques, J. P. R., & de Carvalho, H. W. P. (2023). Foliar Calcium Absorption by Tomato Plants: Comparing the Effects of Calcium Sources and Adjuvant Usage. Plants, 12(14), 2587. https://doi.org/10.3390/plants12142587

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